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Underwater Photogrammetry and Object Modeling: A Case Study of Xlendi Wreck in Malta

机译:水下摄影测量与对象建模:以马耳他Xlendi Wreck为例

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摘要

In this paper we present a photogrammetry-based approach for deep-sea underwater surveys conducted from a submarine and guided by knowledge-representation combined with a logical approach (ontology). Two major issues are discussed in this paper. The first concerns deep-sea surveys using photogrammetry from a submarine. Here the goal was to obtain a set of images that completely covered the selected site. Subsequently and based on these images, a low-resolution 3D model is obtained in real-time, followed by a very high-resolution model produced back in the laboratory. The second issue involves the extraction of known artefacts present on the site. This aspect of the research is based on an a priori representation of the knowledge involved using systematic reasoning. Two parallel processes were developed to represent the photogrammetric process used for surveying as well as for identifying archaeological artefacts visible on the sea floor. Mapping involved the use of the CIDOC-CRM system (International Committee for Documentation (CIDOC)—Conceptual Reference Model)—This is a system that has been previously utilised to in the heritage sector and is largely available to the established scientific community. The proposed theoretical representation is based on procedural attachment; moreover, a strong link is maintained between the ontological description of the modelled concepts and the Java programming language which permitted 3D structure estimation and modelling based on a set of oriented images. A very recently discovered shipwreck acted as a testing ground for this project; the Xelendi Phoenician shipwreck, found off the Maltese coast, is probably the oldest known shipwreck in the western Mediterranean. The approach presented in this paper was developed in the scope of the GROPLAN project (Généralisation du Relevé, avec Ontologies et Photogrammétrie, pour l'Archéologie Navale et Sous-marine). Financed by the French National Research Agency (ANR) for four years, this project associates two French research laboratories, an industrial partner, the University of Malta, and Texas A & M University.
机译:在本文中,我们提出了一种基于摄影测量的方法,用于从潜艇进行的深海水下调查,并以知识表示法与逻辑方法(本体论)相结合为指导。本文讨论了两个主要问题。第一个问题涉及使用潜水艇的摄影测量技术进行的深海调查。这里的目标是获得一组完全覆盖所选站点的图像。随后,基于这些图像,实时获取低分辨率3D模型,然后在实验室中生成非常高分辨率的模型。第二个问题涉及提取该站点上存在的已知伪像。研究的这一方面基于使用系统推理对所涉及知识的先验表示。开发了两个并行过程,以表示用于勘测以及识别海底可见考古文物的摄影测量过程。制图涉及使用CIDOC-CRM系统(国际文档委员会(CIDOC)-概念参考模型)-该系统先前已在遗产部门中使用,并且已为建立的科学界广泛使用。拟议的理论表示基于程序附件;此外,在建模概念的本体描述与Java编程语言之间保持了牢固的联系,该Java编程语言允许基于一组定向图像进行3D结构估计和建模。最近发现的沉船事故成为该项目的试验场。在马耳他海岸附近发现的Xelendi Phoenician海难可能是地中海西部最古老的海难。本文介绍的方法是在GROPLAN项目(GénéralisationduRelevé,avec Ontologies etPhotogrammétrie,pour l'ArchéologieNavale和Sous-marine)的范围内开发的。该项目由法国国家研究局(ANR)资助了四年,与两个法国研究实验室,一个工业合作伙伴马耳他大学和德克萨斯农工大学合作。

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